| Literature DB >> 28324345 |
Raj Kumar Salar1, Milan Certik2, Vlasta Brezova2, Marta Brlejova2, Vladimira Hanusova2, Emília Breierová3.
Abstract
Rhodotorula glutinis CCY 20-2-26 when grown under controlled stress of either NaCl (1-5 %) or H2O2 (1-5 mM) on basal media exhibited a twofold increase in its total phenolic contents. The radical scavenging capacities (RSCs) as determined by ABTS test were found to be highest in 4 mM H2O2 (1.44 mM TEAC mg-1) and 4 % NaCl (1.13 mM TEAC mg-1) as compared to control samples (0.41 mM TEAC mg-1). Similarly, the RSCs as determined by DPPH test were also highest in 4 % NaCl (1.83 mM TEAC mg-1) and 4 mM H2O2 (1.78 mM TEAC mg-1) compared to control (0.48 TEAC mg-1). The relative RSCs from EPR spin-trapping assay for H2O2-stressed cultures were highest in 1 mM H2O2 (56.1 μM TEAC g-1) whereas in NaCl-stressed cultures it was highest in 5 % NaCl (44.6 μM TEAC g-1) as compared to control (30.9 μM TEAC g-1). Five phenolic compounds (gallic acid, benzoic acid, catechin, caffeic acid and ferulic acid) were detected for the first time in R. glutinis CCY 20-2-26.Entities:
Keywords: EPR/spin trapping; HPLC; Phenolics; Radical scavenging capacity; Rhodotorula
Year: 2012 PMID: 28324345 PMCID: PMC3563748 DOI: 10.1007/s13205-012-0069-1
Source DB: PubMed Journal: 3 Biotech ISSN: 2190-5738 Impact factor: 2.406
Total phenolic content of cells and cell free DMSO extracts of Rhodotorula glutinis grown under stress of NaCl or H2O2
| Stress factor | Total phenolic contents (GAE mg g−1) DCW | |
|---|---|---|
| Cells | Cell free DMSO extracts | |
| Control | 30.80 | 37.69 |
| 1 % NaCl | 30.06 | 47.49 |
| 2 % NaCl | 18.92 | 38.26 |
| 3 % NaCl | 40.45 | 34.94 |
| 4 % NaCl | 24.86 | 46.15 |
| 5 % NaCl | 40.45 | 40.37 |
| 1 mM H2O2 | 62.72 | 44.29 |
| 2 mM H2O2 | 50.84 | 34.60 |
| 3 mM H2O2 | 38.22 | 33.65 |
| 4 mM H2O2 | 54.55 | 50.15 |
| 5 mM H2O2 | 43.42 | 29.04 |
Fig. 1Trolox equivalent antioxidant capacity of DMSO extracts of R. glutinis as determined by a ABTS assay and b DPPH assay
Fig. 2a Experimental (full line) and simulated (dotted line) EPR spectrum (SW = 6 mT) of •DMPO-SO4− spin adduct recorded during the thermally initiated decomposition of K2S2O8 in DMSO at 333 K. Simulation spin Hamiltonian parameters: aN = 1.296 mT, aHβ = 0.938 mT, aHγ = 0.139 mT; g = 2.0059. b Time course of 20 individual EPR spectra obtained for samples of DMSO extracts of NaCl and H2O2-stressed Rhodotorula glutinis CCY 20-2-26. All sets of 20 EPR spectra of DMPO adducts monitored during the thermal (333 K) decomposition of K2S2O8 in the presence of DMSO extracts were taken for 22 min under the same experimental conditions as for reference sample (DMSO, instead of DMSO extracts). Extracts concentrations (μg mL−1): control (257), 4 % NaCl (115), 1 mM H2O2 (207), 2 mM H2O2 (207), 4 mM H2O2 (131) and 5 mM H2O2 (216)
Fig. 3Time course of EPR integral intensities of DMPO adducts (spectra shown in Fig. 2b) recorded during first 22 min of the thermal decomposition of K2S2O8 in the presence of DMSO extracts of R. glutinis grown under stress of NaCl or H2O2
Fig. 4Radical scavenging capacities (equated to actual dry weight of the samples) expressed as TEAC and evaluated by EPR spin trapping of DMSO extracts of R. glutinis grown under various concentrations of NaCl or H2O2
Fig. 5HPLC profile of the DMSO extracts of R. glutinis showing presence of various phenolic compounds at 272 nm